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Evaluation of attenuation and scatter correction requirements as a function of object size in PET small animal imaging

机译:在PET小动物成像中评估衰减和散射校正要求与物体大小的关系

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In human emission tomography, an additional transmission scan is often required to obtain accurate attenuation maps for attenuation correction (AC) and scatter correction (SC). These methods have been translated to small animal imaging, although the impact of photon interactions on the reconstruction of mouse/rat images is substantially less than that in human imaging. In this study, we evaluate the requirement of these corrections for PET small animal imaging through Monte Carlo simulations of the Inveon PET scanner using MOBY voxelized phantoms scaled to different sizes (2.1–6.4 cm diameters). The 3D data were reconstructed in 6 different conditions depending on the attenuation map used: Accurate AC+SC, Simple AC+SC, Accurate AC only, Simple AC only, SC only and No correction. Mean error% for 8 different ROIs and 6 different MOBY sizes were obtained against the accurate reconstruction (first on the list). In addition, real mouse data obtained from an Inveon PET scanner were analyzed using similar methods. The results from simulations and real mouse data showed that attenuation correction based on solely emission data should be sufficient for imaging animals smaller than 4 cm diameter.
机译:在人体放射断层扫描中,通常需要进行额外的透射扫描以获取准确的衰减图,以进行衰减校正(AC)和散射校正(SC)。这些方法已经转化为小动物成像,尽管光子相互作用对重建小鼠/大鼠图像的影响远小于人类成像中的影响。在这项研究中,我们通过Inveon PET扫描仪的蒙特卡罗模拟(使用缩放到不同尺寸(直径2.1–6.4厘米)的MOBY体素化体模)的Monte Carlo模拟评估了对PET小动物成像进行这些校正的要求。根据所使用的衰减图,在6种不同条件下重建3D数据:准确的AC + SC,简单的AC + SC,仅精确的AC,仅简单的AC,仅SC以及无校正。针对准确的重建,获得了8种不同的ROI和6种不同的MOBY尺寸的平均误差%(排在第一位)。此外,使用类似的方法分析了从Inveon PET扫描仪获得的真实鼠标数据。模拟和真实小鼠数据的结果表明,仅基于发射数据的衰减校正应足以对直径小于4 cm的动物进行成像。

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